Literature DB >> 26078108

Impact of the antifungal protein PgAFP from Penicillium chrysogenum on the protein profile in Aspergillus flavus.

Josué Delgado1, Rebecca A Owens2, Sean Doyle2, Miguel A Asensio3, Félix Núñez1.   

Abstract

Antifungal proteins produced by molds are generally small, highly basic, and cysteine-rich. The best known effects of these proteins include morphological changes, metabolic inactivation, and membrane perturbation on sensitive fungi. Reactive oxygen species (ROS) generation leads to apoptosis, with G -protein playing a key role in transduction of cell death signals. The antifungal protein PgAFP from Penicillium chrysogenum inhibits growth of some toxigenic molds. Here we analyzed the effect of the antifungal protein PgAFP on the growth of Aspergillus flavus. For this, comparative proteomic analysis was used to identify the whole protein profile and protein change in abundance after PgAFP treatment. PgAFP provoked metabolic changes related to reduced energy metabolism, cell wall integrity alteration, and increased stress response due to higher levels of ROS. The observed changes in protein abundance, favoring a higher glutathione concentration as well as the increased abundance in heat shock proteins, do not seem to be enough to avoid necrosis. The decreased chitin deposition observed in PgAFP-treated A. flavus is attributed to a lower relative quantity of Rho1. The reduced relative abundance of a β subunit of G -protein seems to be the underlying reason for modulation of apoptosis in PgAFP-treated A. flavus hyphae. We propose Rho1 and G -protein subunit β CpcB to be the main factors in the mode of action of PgAFP in A. flavus. Additionally, enzymes essential for the biosynthesis of aflatoxin were no longer detectable in A. flavus hyphae at 24 h, following treatment with PgAFP. This presents a promising effect of PgAFP, which may prevent A. flavus from producing mycotoxins. However, the impact of PgAFP on actual aflatoxin production requires further study.

Entities:  

Keywords:  Antifungal compounds; Apoptosis; Aspergillus flavus; Proteomics; Toxigenic fungi

Mesh:

Substances:

Year:  2015        PMID: 26078108     DOI: 10.1007/s00253-015-6731-x

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  7 in total

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Journal:  Toxins (Basel)       Date:  2021-02-01       Impact factor: 4.546

2.  A Network Approach of Gene Co-expression in the Zea mays/Aspergillus flavus Pathosystem to Map Host/Pathogen Interaction Pathways.

Authors:  Bryan M Musungu; Deepak Bhatnagar; Robert L Brown; Gary A Payne; Greg OBrian; Ahmad M Fakhoury; Matt Geisler
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Review 3.  Antifungal Microbial Agents for Food Biopreservation-A Review.

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Journal:  Microorganisms       Date:  2017-07-08

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6.  Inhibitory Effect of PgAFP and Protective Cultures on Aspergillus parasiticus Growth and Aflatoxins Production on Dry-Fermented Sausage and Cheese.

Authors:  Josué Delgado; Alicia Rodríguez; Alfredo García; Félix Núñez; Miguel A Asensio
Journal:  Microorganisms       Date:  2018-07-13

7.  The Antifungal Protein AfpB Induces Regulated Cell Death in Its Parental Fungus Penicillium digitatum.

Authors:  Adrià Bugeda; Sandra Garrigues; Mónica Gandía; Paloma Manzanares; Jose F Marcos; María Coca
Journal:  mSphere       Date:  2020-08-26       Impact factor: 4.389

  7 in total

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